We consider discrete-alphabet encoding schemes for coherent-state quantum key distribution. The sender encodes the letters of a finite-size alphabet into coherent states whose amplitudes are symmetrically distributed on a circle centered in the origin of the phase space. We study the asymptotic performance of this phase-encoded coherent-state protocol in direct and reverse reconciliation assuming both loss and thermal noise in the communication channel. In particular, we show that using just four phase-shifted coherent states is sufficient for generating secret key rates of the order of $4 \times 10^{-3}$ bits per channel use at about 15 dB loss in the presence of realistic excess noise
We prove the security of the Bennett-Brassard (BB84) quantum key distribution protocol in the case w...
The performance of a practical continuous-variable (CV) quantum key distribution (QKD) protocol depe...
The continuous-variable quantum key distribution (CVQKD) has been demonstrated to be available in pr...
We consider discrete-alphabet encoding schemes for coherent-state quantum key distribution. The send...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
We analyse a central broadcast continuous variable quantum key distribution protocol in which a beam...
We investigate the performance of several continuous-variable quantum key distribution protocols in ...
We propose efficient-phase-encoding protocols for continuous-variable quantum key distribution using...
We present a protocol for quantum key distribution using discrete modulation of coherent states of l...
Here, we demonstrate that a practical Continuous Variables Quantum Key Distribution (CVQKD) protocol...
We study the impact of finite-size effects on the security of thermal one-way quantum cryptography. ...
The asymptotic key generation (AKG) rates of quantum key distribution (QKD) with the decoy method ar...
We put forward a hybrid quantum key distribution protocol based on coherent states, Gaussian modulat...
In continuous-variables quantum key distribution with coherent states, the advantage of performing t...
Quantum continuous variables are being explored as an alternative means to implement quantum key dis...
We prove the security of the Bennett-Brassard (BB84) quantum key distribution protocol in the case w...
The performance of a practical continuous-variable (CV) quantum key distribution (QKD) protocol depe...
The continuous-variable quantum key distribution (CVQKD) has been demonstrated to be available in pr...
We consider discrete-alphabet encoding schemes for coherent-state quantum key distribution. The send...
We consider discrete-modulation protocols for continuous-variable quantum key distribution (CV-QKD) ...
We analyse a central broadcast continuous variable quantum key distribution protocol in which a beam...
We investigate the performance of several continuous-variable quantum key distribution protocols in ...
We propose efficient-phase-encoding protocols for continuous-variable quantum key distribution using...
We present a protocol for quantum key distribution using discrete modulation of coherent states of l...
Here, we demonstrate that a practical Continuous Variables Quantum Key Distribution (CVQKD) protocol...
We study the impact of finite-size effects on the security of thermal one-way quantum cryptography. ...
The asymptotic key generation (AKG) rates of quantum key distribution (QKD) with the decoy method ar...
We put forward a hybrid quantum key distribution protocol based on coherent states, Gaussian modulat...
In continuous-variables quantum key distribution with coherent states, the advantage of performing t...
Quantum continuous variables are being explored as an alternative means to implement quantum key dis...
We prove the security of the Bennett-Brassard (BB84) quantum key distribution protocol in the case w...
The performance of a practical continuous-variable (CV) quantum key distribution (QKD) protocol depe...
The continuous-variable quantum key distribution (CVQKD) has been demonstrated to be available in pr...